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Inhibition of the mutagenicity of bay-region diol epoxides of polycyclic aromatic hydrocarbons by naturally occurring plant phenols: Exceptional activity of ellagic acid

机译:天然存在的植物酚类对多环芳烃海湾区二醇环氧化物的致突变性的抑制作用:鞣花酸的出色活性

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摘要

Ferulic, caffeic, chlorogenic, and ellagic acids, four naturally occurring plant phenols, inhibit the mutagenicity and cytotoxicity of (±)-7β,8α-dihydroxy-9α, 10α-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene (B[a]P 7,8-diol-9,10-epoxide-2), the only known ultimate carcinogenic metabolite of benzo[a]pyrene. The mutagenicity of 0.05 nmol of B[a]P 7,8-diol-9,10-epoxide-2 in strain TA100 of Salmonella typhimurium is inhibited 50% by incubation of the bacteria and the diol epoxide with 150 nmol of ferulic acid, 75 nmol of caffeic acid, 50 nmol of chlorogenic acid or, most strikingly, 1 nmol of ellagic acid in the 0.5-ml incubation mixture. A 3-nmol dose of ellagic acid inhibits mutation induction by 90%. Ellagic acid is also a potent antagonist of B[a]P 7,8-diol-9,10-epoxide-2 in Chinese hamster V79 cells. Mutations to 8-azaguanine resistance induced by 0.2 μM diol epoxide are reduced by 50% when tissue culture media also contains 2 μM ellagic acid. Similar to results obtained with the bacteria, ferulic, caffeic, and chlorogenic acids are approximately two orders of magnitude less active than ellagic acid in the mammalian cell assay. The antimutagenic effects of the plant phenols result from their direct interaction with B[a]P 7,8-diol-9,10-epoxide-2, because a concentration-dependent increase in the rate of diol epoxide disappearance in cell-free solutions of 1:9 dioxane/water, pH 7.0, is observed with all four phenols. In parallel with the mutagenicity studies, ellagic acid is 80-300 times more effective than the other phenols in accelerating the disappearance of B[a]P 7,8-diol-9,10-epoxide-2. Ellagic acid at 10 μM increases the disappearance of B[a]P 7,8-diol-9,10-epoxide-2 by approximately 20-fold relative to the spontaneous and hydronium ion-catalyzed hydrolysis of the diol epoxide at pH 7.0. Ellagic acid is a highly potent inhibitor of the mutagenic activity of bay-region diol epoxides of benzo[a]pyrene, dibenzo[a,h]pyrene, and dibenzo[a,i]pyrene, but higher concentrations of ellagic acid are needed to inhibit the mutagenic activity of the chemically less reactive bay-region diol epoxides of benz[a]anthracene, chrysene, and benzo[c]phenanthrene. These studies demonstrate that ellagic acid is a potent antagonist of the adverse biological effects of the ultimate carcinogenic metabolites of several polycyclic aromatic hydrocarbons and suggest that this naturally occurring plant phenol, normally ingested by humans, may inhibit the carcinogenicity of polycyclic aromatic hydrocarbons.
机译:阿魏酸,咖啡酸,绿原酸和鞣花酸,四种天然存在的植物酚,抑制(±)-7β,8α-dihydroxy-9α,10α-epoxy-7,8,9,10-tetrahydrobenzo[a]的诱变性和细胞毒性。 ((B [a] P 7,8-diol-9,10-epoxide-2),苯并[a] py的唯一已知的最终致癌代谢产物。通过细菌与150 nmol的阿魏酸温育,细菌和二醇环氧化物可抑制50%的鼠伤寒沙门氏菌TA100菌株中0.05 nmol的B [a] P 7,8-二醇-9,10-环氧2诱变性,在0.5毫升的孵育混合物中,咖啡酸为75纳摩尔,绿原酸为50纳摩尔,或者最引人注目的是鞣花酸1纳摩尔。 3 nmol剂量的鞣花酸可将突变诱导抑制90%。在中国仓鼠V79细胞中,鞣花酸还是B [a] P 7,8-二醇-9,10-环氧化物-2的有效拮抗剂。当组织培养基还包含2μM鞣花酸时,由0.2μM环氧二醇诱导的对8-氮杂鸟嘌呤抗性的突变减少50%。与细菌获得的结果相似,在哺乳动物细胞测定中,阿魏酸,咖啡酸和绿原酸的活性比鞣花酸低约两个数量级。植物酚的抗诱变作用是由于它们与B [a] P 7,8-diol-9,10-epoxide-2的直接相互作用所致,因为在无细胞溶液中二醇环氧化物消失速率的浓度依赖性增加在所有四种酚中均观察到1∶9的二恶烷/水pH值为7.0。在致突变性研究的同时,鞣花酸在加速B [a] P 7,8-二醇-9,10-环氧2的消失方面是其他酚的80-300倍。相对于pH 7.0的二醇环氧化物的自发和水合氢离子催化水解,10μM的鞣花酸使B [a] P 7,8-二醇-9,10-环氧2的消失增加约20倍。鞣花酸是苯并[a] py,二苯并[a,h] py和二苯并[a,i] py的海湾区域二醇环氧化物诱变活性的高效抑制剂,但需要更高浓度的鞣花酸才能抑制苯并[a]蒽,苯和苯并[c]菲的化学反应性较低的海湾区域二醇环氧化物的诱变活性。这些研究表明,鞣花酸是几种多环芳烃最终致癌物代谢产物的不利生物学效应的有效拮抗剂,并表明这种天然存在的植物酚通常被人类摄入,可能会抑制多环芳烃的致癌性。

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